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小丑鱼适应性辐射的基因组学研究进展:与海葵共生的遗传基础。

Insights into the Genomics of Clownfish Adaptive Radiation: Genetic Basis of the Mutualism with Sea Anemones.

机构信息

Department of Computational Biology, Génopode, University of Lausanne, Switzerland.

Observatoire Océanologique de Banyuls-sur-Mer, UMR CNRS 7232 BIOM, Sorbonne University, Banyuls-sur-Mer, France.

出版信息

Genome Biol Evol. 2019 Mar 1;11(3):869-882. doi: 10.1093/gbe/evz042.

Abstract

Clownfishes are an iconic group of coral reef fishes, especially known for their mutualism with sea anemones. This mutualism is particularly interesting as it likely acted as the key innovation that triggered clownfish adaptive radiation. Indeed, after the acquisition of the mutualism, clownfishes diversified into multiple ecological niches linked with host and habitat use. However, despite the importance of this mutualism, the genetic mechanisms allowing clownfishes to interact with sea anemones are still unclear. Here, we used a comparative genomics and molecular evolutionary analyses to investigate the genetic basis of clownfish mutualism with sea anemones. We assembled and annotated the genome of nine clownfish species and one closely related outgroup. Orthologous genes inferred between these species and additional publicly available teleost genomes resulted in almost 16,000 genes that were tested for positively selected substitutions potentially involved in the adaptation of clownfishes to live in sea anemones. We identified 17 genes with a signal of positive selection at the origin of clownfish radiation. Two of them (Versican core protein and Protein O-GlcNAse) show particularly interesting functions associated with N-acetylated sugars, which are known to be involved in sea anemone discharge of toxins. This study provides the first insights into the genetic mechanisms of clownfish mutualism with sea anemones. Indeed, we identified the first candidate genes likely to be associated with clownfish protection form sea anemones, and thus the evolution of their mutualism. Additionally, the genomic resources acquired represent a valuable resource for further investigation of the genomic basis of clownfish adaptive radiation.

摘要

小丑鱼是珊瑚礁鱼类中的一个标志性群体,尤其以与海葵的共生关系而闻名。这种共生关系特别有趣,因为它可能是触发小丑鱼适应性辐射的关键创新。事实上,在获得共生关系后,小丑鱼多样化为与宿主和栖息地使用相关的多个生态位。然而,尽管这种共生关系很重要,但允许小丑鱼与海葵相互作用的遗传机制仍不清楚。在这里,我们使用比较基因组学和分子进化分析来研究小丑鱼与海葵共生的遗传基础。我们组装和注释了 9 种小丑鱼物种和 1 种密切相关的外群的基因组。在这些物种之间推断的同源基因和其他公开可用的硬骨鱼基因组产生了近 16000 个基因,这些基因被测试是否存在可能与小丑鱼适应生活在海葵中的正选择取代。我们在小丑鱼辐射的起源处鉴定出了 17 个具有正选择信号的基因。其中两个(核心蛋白聚糖和蛋白 O-GlcNAse)显示出与 N-乙酰化糖特别相关的有趣功能,已知这些糖与海葵毒素的排放有关。这项研究首次深入了解了小丑鱼与海葵共生的遗传机制。实际上,我们鉴定了可能与小丑鱼免受海葵伤害相关的第一批候选基因,因此也鉴定了它们共生关系的进化。此外,获得的基因组资源代表了进一步研究小丑鱼适应性辐射的基因组基础的宝贵资源。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/641f/6430985/9535ca369dc0/evz042f1.jpg

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